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An explosive antisense RNA strategy for inhibition of a lactococcal bacteriophage

S A Walker1, T R Klaenhammer

  • 1Department of Food Science, North Carolina State University, Raleigh, North Carolina 27695-7624, USA.

Insights

This study developed antisense constructs to inhibit lactococcal bacteriophage phi31 proliferation. A modified vector significantly reduced phage plaque formation and protected Lactococcus lactis, demonstrating a successful antisense strategy.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Bacteriophage Research

Background:

  • Lactococcal bacteriophages pose a significant threat to dairy fermentation processes.
  • Antisense RNA technology offers a potential strategy for phage control.
  • Previous attempts to inhibit phage phi31 using antisense constructs were unsuccessful.

Purpose of the Study:

  • To develop and evaluate novel antisense constructs for inhibiting lactococcal bacteriophage phi31 replication.
  • To enhance the efficacy of antisense RNA by utilizing the phage phi31 origin of replication (ori31).
  • To assess the protective effect of the optimized antisense strategy on Lactococcus lactis.

Main Methods:

  • Cloning of open reading frames (ORFs) from phage phi31 into antisense constructs.
  • Subcloning of antisense cassettes into a low-copy-number vector (pTRK360) containing ori31.
  • Assessing phage inhibition through efficiency of plaquing (EOP) and plaque size measurements.
  • Analyzing phage replication dynamics using one-step growth curves and growth curves at varying multiplicities of infection.

Main Results:

  • Antisense constructs alone showed no effect on phage phi31 efficiency.
  • The combination of ori31 and an anti-ORF 4H antisense cassette significantly reduced EOP (threefold decrease).
  • Expression of anti-ORF 4H RNA decreased successful centers of infection and offered significant protection to Lactococcus lactis, even at low multiplicities of infection.

Conclusions:

  • The study successfully demonstrates a viable antisense strategy for inhibiting phage phi31 proliferation.
  • The integration of the phage phi31 origin of replication (ori31) is crucial for enhancing antisense RNA efficacy.
  • This approach provides a promising method for protecting Lactococcus lactis against phage infections in industrial settings.

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